• 제목/요약/키워드: Steel for Construction

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고속 비상체 충격에 의한 시멘트 복합체의 파괴거동 평가 (Evaluation of Fracture Behaviours of Cementitious Composites by High-velocity Projectile Impact)

  • 민지영;조현우;이장화;김성욱;문재흠
    • 한국구조물진단유지관리공학회 논문집
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    • 제19권6호
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    • pp.55-62
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    • 2015
  • 공공시설물의 대형화 및 도심지로의 인구 밀집화에 따라 충돌 또는 폭발과 같은 하중조건 하에서의 구조물 방호성능의 중요성이 대두되고 있다. 그러나 구조물의 방호설계 및 시공에 있어서 필수적이라 할 수 있는 구조 재료 또는 자재에 대한 방호성능 평가기준은 현재 정립되어 있지 않은 실정이다. 따라서 본 연구에서는 구조용 자재의 내충격 성능평가 기준 개발 연구의 일환으로 가스건을 사용한 발사체 충격 파괴시험을 콘크리트 시험체에서 수행함과 동시에, 다양한 접촉식 계측 센서의 적용 가능성을 확인하고자 하였다. 또한, 충격 파괴시험을 통해 일반 콘크리트 및 강섬유가 보강된 초고성능콘크리트의 파괴모드 및 방호성능에 대한 평가를 수행하였다. 실험 수행 결과, 접촉식 계측센서 중 LVDT 변위계의 적용 가능성을 확인하였으며, UHPC의 경우 혼입된 보강섬유의 효과로 인해 일반 콘크리트에 비해 우수한 방호성능을 보여주었다.

프리캐스트 바닥판의 자기부상열차 가이드웨이 시스템 적용성 평가 : 모의 시공 실험 (Applicability Evaluation of Precast Deck to the Maglev Guideway System : Mock-Up Construction Test)

  • 진병무;김인규;김영진;오현철;마향욱;이윤석
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 춘계 학술발표회 제20권1호
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    • pp.57-60
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    • 2008
  • 자기부상열차는 궤도 위에 부상하여 운행하는 시스템이다. 자기부상열차의 특성상 주행 중 부상공극을 일정하게 유지하는 것이 사용성 및 승객의 승차감 면에서 매우 중요하다. 이 연구는 2006년 출범한 도시형 자기부상열차 실용화 사업단의 3-1 세부과제 선로구축물 성능개선 과제의 협동연구과제로 자기부상열차교량 상부구조의 급속시공법 개발을 목표로 연구를 수행하였다. 현재 도로교에서 프리캐스트 바닥판은 품질, 공기 면에서 현장타설 바닥판에 비해 우수하며, 널리 사용되고 있다. 따라서, 연구진은 3-1세부과제의 주관기관인 한국철도기술연구원과 협업을 통하여 1차년도에 PSC-U형 거더 및 개구제형 강재 거더에 프리캐스트 바닥판을 적용하여 자기부상열차 가이드웨이의 기본 시스템을 제안한 바 있다. 이 연구에서는 PSC-U형 거더, 프리캐스트 바닥판 및 새로운 형식의 가이드레일 시스템을 적용한 자기부상열차 가이드웨이의 시공성, 사용성, 유지관리성을 평가하고자 거더-바닥판-궤도로 이루어진 목업 실험체를 실대형 크기로 제작하여 실제 시공 환경과 비슷한 모의 시공을 수행하였다.

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The Classification of Manufacturing Work Processes to Develop Functional Work Clothes - With a Reference to the Automobile, Machine and Shipbuilding Industries -

  • Park, Ginah;Park, Hyewon;Bae, Hyunsook
    • 패션비즈니스
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    • 제16권6호
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    • pp.21-35
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    • 2012
  • In consideration of the injuries and deaths occurring at manufacturing sites due to the use of inappropriate work clothes or safety devices, this study aims to categorize manufacturing work processes to develop functional work clothes for heavy industries including the automobile, machine and shipbuilding industries in South Korea. Defining the features of the work environments and work postures of these industries provided for a categorization of the work processes which would enable the development of suitable work clothes for each work process' category. The results of the study based on a questionnaire survey are as follows: Work process category 1, including steel panel pressing and auto body assembly, final inspection (in automobile) and inspection (in machine), requires work clothes with upper body and arm mobility and performance to protect from the toxic fume factor. Work process category 2, consisting of welding (in automobile), cutting-and-forming (in machine) and attachment-and-construction (in shipbuilding), requires clothing elasticity, durability and heat and fire resistance. Work process category 3 comprising welding and grinding in the machine and shipbuilding industries, requires work clothes' tear resistance and elasticity, particularly for lateral bending mobility, and work clothes' sleeves' and pants' hemlines with sealed designs to defend against iron filing penetration, as well as incombustible and heat-resistant material performance. Finally, work process category 4, including painting in machine and shipbuilding, requires work clothes with waterproofing, air permeability, thermal performance, elasticity, durability and abrasion resistance.

Performance-based and damage assessment of SFRP retrofitted multi-storey timber buildings

  • Vahedian, Abbas;Mahini, Seyed Saeed;Glencross-Grant, Rex
    • Structural Monitoring and Maintenance
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    • 제2권3호
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    • pp.269-282
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    • 2015
  • Civil structures should be designed with the lowest cost and longest lifetime possible and without service failure. The efficient and sustainable use of materials in building design and construction has always been at the forefront for civil engineers and environmentalists. Timber is one of the best contenders for these purposes particularly in terms of aesthetics; fire protection; strength-to-weight ratio; acoustic properties and seismic resistance. In recent years, timber has been used in commercial and taller buildings due to these significant advantages. It should be noted that, since the launch of the modern building standards and codes, a number of different structural systems have been developed to stabilise steel or concrete multistorey buildings, however, structural analysis of high-rise and multi-storey timber frame buildings subjected to lateral loads has not yet been fully understood. Additionally, timber degradation can occur as a result of biological decay of the elements and overloading that can result in structural damage. In such structures, the deficient members and joints require strengthening in order to satisfy new code requirements; determine acceptable level of safety; and avoid brittle failure following earthquake actions. This paper investigates performance assessment and damage assessment of older multi-storey timber buildings. One approach is to retrofit the beams in order to increase the ductility of the frame. Experimental studies indicate that Sprayed Fibre Reinforced Polymer (SFRP) repairing/retrofitting not only updates the integrity of the joint, but also increases its strength; stiffness; and ductility in such a way that the joint remains elastic. Non-linear finite element analysis ('pushover') is carried out to study the behaviour of the structure subjected to simulated gravity and lateral loads. A new global index is re-assessed for damage assessment of the plain and SFRP-retrofitted frames using capacity curves obtained from pushover analysis. This study shows that the proposed method is suitable for structural damage assessment of aged timber buildings. Also SFRP retrofitting can potentially improve the performance and load carrying capacity of the structure.

가속열 노화로 열화된 탄성받침 고무재료의 전단 특성(2): 합성고무 (Shear Characteristics of Elastomeric Bearing Rubber Deteriorated by Accelerated Heat Aging(2): Chloroprene Rubber)

  • 선창호;김익현
    • 한국구조물진단유지관리공학회 논문집
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    • 제25권6호
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    • pp.103-110
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    • 2021
  • 유연한 고무재료와 강재 보강판을 적층으로 구성한 탄성받침은 우수한 수직강성과 유연한 횡강성으로 교량의 내진보강용으로 널리 사용되고 있다. 무엇보다 시공이 간단하고 비용이 높지 않다는 장점을 지니고 있다. 고무재료의 한 종류인 합성고무는 천연고무에 비해 노화에 대한 저항성이 크지만 이 역시 다양한 열화요인으로 성능이 저하된다. 내진설계기준 및 내진성능평가요령에서는 이러한 노화의 특성을 반영하고 있지 않지만 관련 연구가 축적되면 이를 반영하는 것이 합리적이다. 합성고무를 대상으로 노화촉진시간과 노출시간을 변수로 하여 노화촉진시험을 수행하여 전단특성의 변화를 분석하였다. 노화가 진행될수록 최대전단응력과 전단변형율은 감소한다. 또한 동일한 전단변형률에서 전단강성이 크게 증가한다.

윤활제 특성에 따른 시트 리클라이너 부품의 마찰 및 마모 특성 (The Friction and Wear Characteristics of the Seat Recliner Parts Based on Lubricant Characteristics)

  • 홍석준;이광희;임현우;김재웅;이철희
    • Tribology and Lubricants
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    • 제35권3호
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    • pp.183-189
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    • 2019
  • The driver seat of an automobile is in direct contact with the driver and provides the driver with a safe and comfortable ride. The seat consists of a frame, a rail, and many recliners. In recent years, strength and operating force measurement testing of the recliner have become vital for designing car seats. However, performance evaluation requires expensive testing equipment, numerous seat products, and considerable time. Therefore, the trend is to reduce experimentation through interpretation. This study examines the lubrication of solid lubricant for automotive seat recliners and confirms the friction and wear performance. In this study, the lubrication behavior of solid lubricants for car seat recliners is investigated to ascertain the friction and wear performance and to provide accurate values for the strength analysis. The friction material consists of a pin and a plate made from steel, which is widely used in recliners. The friction and wear under lubrication conditions are measured by a reciprocating friction wear tester. The friction coefficient is obtained according to the load and speed. Based on the obtained results, it is possible to achieve a reduction in the error of the test value and the analysis by providing the friction coefficient and wear of the lubricant. The results can be applied to the analysis of automobile seat design.

깊이 1200mm급 변단면보의 중간모멘트골조용 내진접합부 개발 (Beam-Column Connection with 1200mm Deep Multi-Reduced Taper Beam for Intermediate Moment Frame)

  • 정시화;알미아이유 로벨 원디므;박만우;주영규
    • 대한건축학회논문집:구조계
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    • 제35권4호
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    • pp.135-146
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    • 2019
  • Deep beam has high section modules compared with shallow beam of the same weight. However, deep beam has low rotational capacity and high possibility of brittle failure so it is not possible to apply deep beams with a long span to intermediate moment frames, which should exhibit a ductility of 0.02rad of a story drift angle of steel moment frames. Accordingly, KBC and AISC limit the beam depth for intermediate and special moment frame to 750mm and 920mm respectively. The purpose of this paper is to improve the seismic performance of intermediate moment frame with 1200mm depth beam. In order to enhance vulnerability of plastic deformation capacity of deeper beam, Multi-Reduced Taper Beam(MRTB) shape that thickness of beam flange is reinforced and at the same time some part of the beam flange width is weakened are proposed. Based on concept of multiple plastic hinge, MRTB is intended to satisfy the rotation requirement for intermediate moment frame by dividing total story drift into each hinge and to prevent the collapse of the main members by inducing local buckling and fracture at the plastic hinge location far away from connection. The seismic performance of MRTB is evaluated by cyclic load test with conventional connections type WUF-W, RBS and Haunch. Some of the proposed MRTB connection satisfies connection requirements for intermediate moment frame and shows improved the seismic performance compared to conventional connections.

Estimating the compressive strength of HPFRC containing metallic fibers using statistical methods and ANNs

  • Perumal, Ramadoss;Prabakaran, V.
    • Advances in concrete construction
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    • 제10권6호
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    • pp.479-488
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    • 2020
  • The experimental and numerical works were carried out on high performance fiber reinforced concrete (HPFRC) with w/cm ratios ranging from 0.25 to 0.40, fiber volume fraction (Vf)=0-1.5% and 10% silica fume replacement. Improvements in compressive and flexural strengths obtained for HPFRC are moderate and significant, respectively, Empirical equations developed for the compressive strength and flexural strength of HPFRC as a function of fiber volume fraction. A relation between flexural strength and compressive strength of HPFRC with R=0.78 was developed. Due to the complex mix proportions and non-linear relationship between the mix proportions and properties, models with reliable predictive capabilities are not developed and also research on HPFRC was empirical. In this paper due to the inadequacy of present method, a back propagation-neural network (BP-NN) was employed to estimate the 28-day compressive strength of HPFRC mixes. BP-NN model was built to implement the highly non-linear relationship between the mix proportions and their properties. This paper describes the data sets collected, training of ANNs and comparison of the experimental results obtained for various mixtures. On statistical analyses of collected data, a multiple linear regression (MLR) model with R2=0.78 was developed for the prediction of compressive strength of HPFRC mixes, and average absolute error (AAE) obtained is 6.5%. On validation of the data sets by NNs, the error range was within 2% of the actual values. ANN model has given the significant degree of accuracy and reliability compared to the MLR model. ANN approach can be effectively used to estimate the 28-day compressive strength of fibrous concrete mixes and is practical.

배가스 내 미세먼지 제거를 위한 고성능 집진 기술에 대한 연구 (A Study on High performance Electrical Precipitation Technology for PM Removal in Exhaust Gas)

  • 김소연;김민성;최상미;정민규;이진욱
    • 플랜트 저널
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    • 제18권1호
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    • pp.50-54
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    • 2022
  • 미세먼지 배출 허용 기준이 강화됨에 따라 화력발전소, 제철소, 산업용 열병합 발전소 등 배가스 배출 시설의 미세먼지 제거를 위해 고효율 집진장치 수요가 급증하고 있다. 본 연구에서는 기존 전기집진기에 정전분무 기술을 도입하여 단점을 보완하고 성능을 향상시키는 연구를 진행 중이다. 정전분무는 매우 미세한 액적을 생성하는 목적으로 주로 사용되어왔지만, 집진을 목적으로 할 때는 그 유량이 10mL/min으로 65 ~ 200배에 달하는 고유량 조건이 필요하다. 고유량의 정전분무는 저유량과는 완전하게 다른 분무 형상이 나타나며 코로나 방전 사진 촬영, 그림자 촬영법 등 다양한 촬영을 통하여 이를 가시화하였다.

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사출성형 섬유강화플라스틱 볼트 연결부의 강도 평가를 위한 실험적 연구 (An Experimental Study for the Strength Evaluation of Bolted Connection in Resin Transfer Molding Fiber Reinforced Polymeric Plastic)

  • 최진우;김선희
    • 도시과학
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    • 제11권2호
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    • pp.25-30
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    • 2022
  • Resin Transfer Molding FRP (RTM FRP) is a fiber reinforced polymeric plastic which is manufactured by applying pressure to fibers, injecting resin into a mold, and then impregnating it. RTM FRP is a new construction material suitable for producing non-continuum structural elements such as sole plate because it has excellent strength and can produce many members in a short time. In this study, experiments were conducted to estimate the capacity of the bolted connection of RTM FRP. First, a tensile test was conducted to confirm the mechanical properties such as the tensile strength of the RTM FRP to be used for the bolted connection experiments. In addition, experiments were conducted on the bolted connection with the thickness of the RTM FRP and the edge distance of the bolt as variables. In the first experiment, F4.8 bolts were used, and shear failure of the bolt occurred before the RTM FRPs were failed. The F4.8 bolt is a general structural bolts used for the sole plate of a bridge bearing, and it was confirmed that the RTM FRP has a higher bold bearing strength than the shear strength of a F4.8 bolt. In the second experiment, G12.9 bolts were used, and shear failure of the bolt and bearing failure of the RTM FRP occurred simultaneously. In addition, as the thickness of the RTM FRP and the edge length of the bolt increased, the strength of the joint increased. When analogized with the bearing fracture equation of steel plate, the bolted connection of RTM FRP showed a bearing strength coefficient of 0.420 to 0.549 compared to the tensile strength, and it is considered that further research is needed.